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基于有限测点的铝合金板残余应力场重构研究 被引量:1
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作者 刘广彦 熊土林 +1 位作者 王璐 文磊 《北京理工大学学报》 EI CAS CSCD 北大核心 2022年第12期1229-1235,共7页
应力函数法可基于有限测点的实测结果重构出构件的全场残余应力,但其应力函数往往难以确定,且不易通过同一应力函数同时重构出多个残余应力分量的分布.针对上述不足,发展了一种利用通用应力函数同时重构多个残余应力分量场的方法.该方... 应力函数法可基于有限测点的实测结果重构出构件的全场残余应力,但其应力函数往往难以确定,且不易通过同一应力函数同时重构出多个残余应力分量的分布.针对上述不足,发展了一种利用通用应力函数同时重构多个残余应力分量场的方法.该方法构造双元傅里叶函数作为艾瑞应力函数,使用判定系数确定模型阶数,并根据实测散点值优化确定应力函数中的未知参数.最后利用模拟三点弯实验的残余应力场验证了该方法的准确性,并将其应用于真实铝合金板的残余应力场重构.结果表明,该方法能同时重构多个应力分量,且重构残余应力场具有较高的精度. 展开更多
关键词 残余应力场 重构 应力函数法 铝合金板 三点弯实验
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Effect of loading rate on fracture characteristics of rock 被引量:6
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作者 周小平 钱七虎 杨海清 《Journal of Central South University》 SCIE EI CAS 2010年第1期150-155,共6页
The three-point bending experiments were applied to investigating effects of loading rates on fracture toughness of Huanglong limestone. The fracture toughness of Huanglong limestone was measured over a wide range of ... The three-point bending experiments were applied to investigating effects of loading rates on fracture toughness of Huanglong limestone. The fracture toughness of Huanglong limestone was measured over a wide range of loading rates from 9 × 10-4 to 1.537 MPa.m1/2/s. According to the approximate relationship between static and dynamic fracture toughness of Huanglong limestone, relationship between the growth velocity of crack and dynamic fracture toughness was obtained. The main conclusions are summarized as follows. (1) When the loading rate is higher than 0.027 MPa-ml/2/s, the fracture toughness of Huanglong limestone increases markedly with increasing loading rate. However, when loading rate is lower than 0.027 MPa-ml/2/s, fracture toughness slightly increases with an increase in loading rate. (2) It is found from experimental results that fracture toughness is linearly proportional to the logarithmic expression of loading rate. (3) For Huanglong limestone, when the growth velocity of crack is lower than 100 m/s, the energy release rate slightly decreases with increasing the growth velocity of crack. However, when the growth velocity of crack is higher than 1 000 m/s, the energy release rate dramatically decreases with an increase in the crack growth velocity. 展开更多
关键词 fracture toughness of rock three-point bending round bar loading rate velocity of crack growth
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